Research Article

Energy, Exergy, and Environmental Assessment of R-152a as a Low-GWP Alternative for R-134a in Domestic Heat Pump Water Heaters for Tropical Countries

Volume: 29 Number: 3 September 1, 2026
EN

Energy, Exergy, and Environmental Assessment of R-152a as a Low-GWP Alternative for R-134a in Domestic Heat Pump Water Heaters for Tropical Countries

Abstract

Domestic heat pump water heaters offer an energy-efficient solution for hot water production in tropical countries. This study evaluates the energy and exergy performance as well as the environmental impact of R-152a as a replacement for R-134a in a domestic heat pump water heater. The evaluation uses a thermodynamic modelling approach under fixed operating conditions, with an evaporator temperature of 10°C, a condenser temperature of 50°C, and a water heating capacity of 1.6 m³. The results indicate that R-152a achieved an actual coefficient of performance (COP) of 6.25, which was 4.3% higher than that of R-134a at 5.99. R-152a also required a lower refrigerant mass flow rate. The mass flow rate decreased from 7.595 g/s for R-134a to 4.555 g/s for R-152a, which represents a reduction of approximately 40%. The exergy analysis further showed that R-152a consistently exhibited higher exergy efficiency than R-134a across the investigated ranges of evaporator temperature and compressor efficiency. This result indicates that R-152a has a lower thermodynamic irreversibility. From an environmental perspective, R-152a also showed a much lower direct Total Equivalent Warming Impact (TEWI). Its direct TEWI was 195.3 kg CO2-eq, which was 91.3% lower than that of R-134a at 2252.25 kg CO2-eq. This reduction is mainly related to the lower Global Warming Potential (GWP) of R-152a, which is 124, compared with 1430 for R-134a. The results demonstrate that R-152a is a promising low-GWP alternative to R-134a for domestic heat pump water heaters, offering improved thermodynamic performance, higher exergy efficiency, and substantially reduced environmental impact. However, its flammability must be carefully addressed through proper safety measures before practical implementation.

Keywords

References

  1. F. İzgi and M. Kavacık, “Analyzing global competitiveness of Turkish air conditioning industry,” Turkish Journal of Engineering, vol. 8, no. 2, pp. 209–234, Apr. 2024, doi: 10.31127/tuje.1372141.
  2. M. I. Alhamid, N. Aisyah, Nasruddin, and A. Lubis, “Thermodynamic and environmental analysis of a high-temperature heat pump using HCFO-1224YD(Z) and HCFO-1233ZD(E),” International Journal of Technology, vol. 10, no. 8, pp. 1585–1592, Dec. 2019, doi: 10.14716/ijtech.v10i8.3459.
  3. R. Mansouri, B.-J. R. Mungyeko Bisulandu, and A. Ilinca, “Assessing Energy Performance and Environmental Impact of Low GWP Vapor Compression Chilled Water Systems,” Energies (Basel)., vol. 16, no. 12, p. 4751, Jun. 2023, doi: 10.3390/en16124751.
  4. M. Z. Sharif, W. H. Azmi, M. F. Ghazali, M. Samykano, and H. M. Ali, “Performance improvement strategies of R1234yf in vapor compression refrigeration system as a R134a replacement: A review,” Journal of the Taiwan Institute of Chemical Engineers, vol. 148, Jul. 2023, Art. no. 105032, doi: 10.1016/j.jtice.2023.105032.
  5. Y. A. Çengel and A. J. Ghajar, Heat and mass transfer: fundamentals & applications, 5th edition. New York, NY: McGraw-Hill Education, 2015.
  6. J. Rosenow, D. Gibb, T. Nowak, and R. Lowes, “Heating up the global heat pump market,” Nat. Energy, vol. 7, no. 10, pp. 901–904, Sep. 2022, doi: 10.1038/s41560-022-01104-8.
  7. P. P. Altermatt et al., “Replacing gas boilers with heat pumps is the fastest way to cut German gas consumption,” Commun. Earth Environ., vol. 4, no. 1, p. 56, Mar. 2023, doi: 10.1038/s43247-023-00715-7. L. Fedele et al., “Energetic Analysis of Low Global Warming Potential Refrigerants as Substitutes for R410A and R134a in Ground-Source Heat Pumps,” Energies (Basel)., vol. 16, no. 9, p. 3757, Apr. 2023, doi: 10.3390/en16093757.
  8. Z. Wang, M. B. Luther, M. Amirkhani, C. Liu, and P. Horan, “State of the Art on Heat Pumps for Residential Buildings,” Buildings, vol. 11, no. 8, p. 350, Aug. 2021, doi: 10.3390/buildings11080350.

Details

Primary Language

English

Subjects

Energy Systems Engineering (Other)

Journal Section

Research Article

Publication Date

September 1, 2026

Submission Date

September 2, 2025

Acceptance Date

July 1, 2026

Published in Issue

Year 2026 Volume: 29 Number: 3

APA
Ariyadi, H. M., Abdussalam, Z., Pranoto, I., & Aisyah, N. (2026). Energy, Exergy, and Environmental Assessment of R-152a as a Low-GWP Alternative for R-134a in Domestic Heat Pump Water Heaters for Tropical Countries. International Journal of Thermodynamics, 29(3), 230-240. https://doi.org/10.5541/ijot.1773781
AMA
1.Ariyadi HM, Abdussalam Z, Pranoto I, Aisyah N. Energy, Exergy, and Environmental Assessment of R-152a as a Low-GWP Alternative for R-134a in Domestic Heat Pump Water Heaters for Tropical Countries. International Journal of Thermodynamics. 2026;29(3):230-240. doi:10.5541/ijot.1773781
Chicago
Ariyadi, Hifni Mukhtar, Zaki Abdussalam, Indro Pranoto, and Nyayu Aisyah. 2026. “Energy, Exergy, and Environmental Assessment of R-152a As a Low-GWP Alternative for R-134a in Domestic Heat Pump Water Heaters for Tropical Countries”. International Journal of Thermodynamics 29 (3): 230-40. https://doi.org/10.5541/ijot.1773781.
EndNote
Ariyadi HM, Abdussalam Z, Pranoto I, Aisyah N (September 1, 2026) Energy, Exergy, and Environmental Assessment of R-152a as a Low-GWP Alternative for R-134a in Domestic Heat Pump Water Heaters for Tropical Countries. International Journal of Thermodynamics 29 3 230–240.
IEEE
[1]H. M. Ariyadi, Z. Abdussalam, I. Pranoto, and N. Aisyah, “Energy, Exergy, and Environmental Assessment of R-152a as a Low-GWP Alternative for R-134a in Domestic Heat Pump Water Heaters for Tropical Countries”, International Journal of Thermodynamics, vol. 29, no. 3, pp. 230–240, Sept. 2026, doi: 10.5541/ijot.1773781.
ISNAD
Ariyadi, Hifni Mukhtar - Abdussalam, Zaki - Pranoto, Indro - Aisyah, Nyayu. “Energy, Exergy, and Environmental Assessment of R-152a As a Low-GWP Alternative for R-134a in Domestic Heat Pump Water Heaters for Tropical Countries”. International Journal of Thermodynamics 29/3 (September 1, 2026): 230-240. https://doi.org/10.5541/ijot.1773781.
JAMA
1.Ariyadi HM, Abdussalam Z, Pranoto I, Aisyah N. Energy, Exergy, and Environmental Assessment of R-152a as a Low-GWP Alternative for R-134a in Domestic Heat Pump Water Heaters for Tropical Countries. International Journal of Thermodynamics. 2026;29:230–240.
MLA
Ariyadi, Hifni Mukhtar, et al. “Energy, Exergy, and Environmental Assessment of R-152a As a Low-GWP Alternative for R-134a in Domestic Heat Pump Water Heaters for Tropical Countries”. International Journal of Thermodynamics, vol. 29, no. 3, Sept. 2026, pp. 230-4, doi:10.5541/ijot.1773781.
Vancouver
1.Hifni Mukhtar Ariyadi, Zaki Abdussalam, Indro Pranoto, Nyayu Aisyah. Energy, Exergy, and Environmental Assessment of R-152a as a Low-GWP Alternative for R-134a in Domestic Heat Pump Water Heaters for Tropical Countries. International Journal of Thermodynamics. 2026 Sep. 1;29(3):230-4. doi:10.5541/ijot.1773781